Some Aspects of Ablation of Sastrugi and Drifts in the Area Subjected to Katabatic Winds in Antarctica (Reports of the Japanese Antarctic Research Expedition)

The observations were made on net ablation of some of sastrugi and drifts (like barchanoids) in the area subjected to strong katabatic winds between 100 and 200 km inland from the Antarctic coast near Syowa Station in September and November, 1969 and in January, 1970 by means of the stake measuremen...

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Bibliographic Details
Main Author: Yutaka AGETA
Format: Article in Journal/Newspaper
Language:English
Japanese
Published: National Institute of Polar Research 1972
Subjects:
Gow
Online Access:https://doi.org/10.15094/00007654
https://doaj.org/article/ebd71396fe4040e08a4e34fcf3da7dc2
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spelling ftdoajarticles:oai:doaj.org/article:ebd71396fe4040e08a4e34fcf3da7dc2 2023-05-15T13:58:48+02:00 Some Aspects of Ablation of Sastrugi and Drifts in the Area Subjected to Katabatic Winds in Antarctica (Reports of the Japanese Antarctic Research Expedition) Yutaka AGETA 1972-03-01T00:00:00Z https://doi.org/10.15094/00007654 https://doaj.org/article/ebd71396fe4040e08a4e34fcf3da7dc2 EN JA eng jpn National Institute of Polar Research https://doi.org/10.15094/00007654 https://doaj.org/toc/0085-7289 https://doaj.org/toc/2432-079X doi:10.15094/00007654 0085-7289 2432-079X https://doaj.org/article/ebd71396fe4040e08a4e34fcf3da7dc2 Antarctic Record, Iss 43, Pp 8-19 (1972) Geography (General) G1-922 article 1972 ftdoajarticles https://doi.org/10.15094/00007654 2022-12-31T10:49:25Z The observations were made on net ablation of some of sastrugi and drifts (like barchanoids) in the area subjected to strong katabatic winds between 100 and 200 km inland from the Antarctic coast near Syowa Station in September and November, 1969 and in January, 1970 by means of the stake measurements. The net ablation of hard sastrugi during the period from November to January (mean 2.8 cm/month) was larger than that from September to November (mean 0.7 cm/month). The large amount of ablation from November to January may be attributed to the increase of solar radiation which accelerates sublimation-deflation on the surface of sastrugi. On the other hand, net ablation of soft sastrugi and drifts from September to November was larger than that from November to January. The large amount of ablation from September to November may be attributed to the strong erosion by the wind, since sastrugi and drifts were soft. Since they were hardened or flattened after erosion by the wind from September to November, the ablation from November to January was not larger than that from September to November. Since the rate of ablation at the top of sastrugi and drifts was higher than that at the surrounding surface in late spring and summer, and the bulk of yearly accumulation is deposited in autumn and winter, it can be said that surface irregularities are supposed to be built up in winter, then smoothed in summer. The best season for yearly stake measurements is considered to be the end of summer when the more accurate value of mean net accumulation may be expected since surface irregularities are less than any other season. Gow (1965) and WELLER (1969) gave some explanation for the higher rate of net ablation of sastrugi than the surrounding surface at the South Pole and Plateau Station. However, since the area of this report is located where the katabatic winds are strong as mentioned above, the situation is different from their case. According to the logarithmic increase of wind velocity, the top of sastrugi is expected to ... Article in Journal/Newspaper Antarc* Antarctic Antarctica South pole South pole Directory of Open Access Journals: DOAJ Articles Antarctic Gow ENVELOPE(162.667,162.667,-71.333,-71.333) Sastrugi ENVELOPE(163.683,163.683,-74.617,-74.617) South Pole Syowa Station The Antarctic Weller ENVELOPE(50.667,50.667,-67.283,-67.283)
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
Japanese
topic Geography (General)
G1-922
spellingShingle Geography (General)
G1-922
Yutaka AGETA
Some Aspects of Ablation of Sastrugi and Drifts in the Area Subjected to Katabatic Winds in Antarctica (Reports of the Japanese Antarctic Research Expedition)
topic_facet Geography (General)
G1-922
description The observations were made on net ablation of some of sastrugi and drifts (like barchanoids) in the area subjected to strong katabatic winds between 100 and 200 km inland from the Antarctic coast near Syowa Station in September and November, 1969 and in January, 1970 by means of the stake measurements. The net ablation of hard sastrugi during the period from November to January (mean 2.8 cm/month) was larger than that from September to November (mean 0.7 cm/month). The large amount of ablation from November to January may be attributed to the increase of solar radiation which accelerates sublimation-deflation on the surface of sastrugi. On the other hand, net ablation of soft sastrugi and drifts from September to November was larger than that from November to January. The large amount of ablation from September to November may be attributed to the strong erosion by the wind, since sastrugi and drifts were soft. Since they were hardened or flattened after erosion by the wind from September to November, the ablation from November to January was not larger than that from September to November. Since the rate of ablation at the top of sastrugi and drifts was higher than that at the surrounding surface in late spring and summer, and the bulk of yearly accumulation is deposited in autumn and winter, it can be said that surface irregularities are supposed to be built up in winter, then smoothed in summer. The best season for yearly stake measurements is considered to be the end of summer when the more accurate value of mean net accumulation may be expected since surface irregularities are less than any other season. Gow (1965) and WELLER (1969) gave some explanation for the higher rate of net ablation of sastrugi than the surrounding surface at the South Pole and Plateau Station. However, since the area of this report is located where the katabatic winds are strong as mentioned above, the situation is different from their case. According to the logarithmic increase of wind velocity, the top of sastrugi is expected to ...
format Article in Journal/Newspaper
author Yutaka AGETA
author_facet Yutaka AGETA
author_sort Yutaka AGETA
title Some Aspects of Ablation of Sastrugi and Drifts in the Area Subjected to Katabatic Winds in Antarctica (Reports of the Japanese Antarctic Research Expedition)
title_short Some Aspects of Ablation of Sastrugi and Drifts in the Area Subjected to Katabatic Winds in Antarctica (Reports of the Japanese Antarctic Research Expedition)
title_full Some Aspects of Ablation of Sastrugi and Drifts in the Area Subjected to Katabatic Winds in Antarctica (Reports of the Japanese Antarctic Research Expedition)
title_fullStr Some Aspects of Ablation of Sastrugi and Drifts in the Area Subjected to Katabatic Winds in Antarctica (Reports of the Japanese Antarctic Research Expedition)
title_full_unstemmed Some Aspects of Ablation of Sastrugi and Drifts in the Area Subjected to Katabatic Winds in Antarctica (Reports of the Japanese Antarctic Research Expedition)
title_sort some aspects of ablation of sastrugi and drifts in the area subjected to katabatic winds in antarctica (reports of the japanese antarctic research expedition)
publisher National Institute of Polar Research
publishDate 1972
url https://doi.org/10.15094/00007654
https://doaj.org/article/ebd71396fe4040e08a4e34fcf3da7dc2
long_lat ENVELOPE(162.667,162.667,-71.333,-71.333)
ENVELOPE(163.683,163.683,-74.617,-74.617)
ENVELOPE(50.667,50.667,-67.283,-67.283)
geographic Antarctic
Gow
Sastrugi
South Pole
Syowa Station
The Antarctic
Weller
geographic_facet Antarctic
Gow
Sastrugi
South Pole
Syowa Station
The Antarctic
Weller
genre Antarc*
Antarctic
Antarctica
South pole
South pole
genre_facet Antarc*
Antarctic
Antarctica
South pole
South pole
op_source Antarctic Record, Iss 43, Pp 8-19 (1972)
op_relation https://doi.org/10.15094/00007654
https://doaj.org/toc/0085-7289
https://doaj.org/toc/2432-079X
doi:10.15094/00007654
0085-7289
2432-079X
https://doaj.org/article/ebd71396fe4040e08a4e34fcf3da7dc2
op_doi https://doi.org/10.15094/00007654
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